Hassan Hanar Q, Tofiq Diary I, Abdalkarim Karzan A, Kayani Kawan F, Hamarawf Rebaz F
Department of Chemistry, College of Science, University of Sulaimani, Qlyasan Street, Sulaymaniyah, Kurdistan Regional Government, 46002, Iraq.
Pharmacy Department, College of Medicine, Komar University of Science and Technology, Qularaise, Sulaymaniyah, Kurdistan Region, 46002, Iraq.
J Fluoresc. 2025 Jan 6. doi: 10.1007/s10895-024-04086-w.
This study highlights the importance of developing sensitive and selective sensors for use in pharmaceutical applications for the first time. A novel iron(III)-complex, constructed from unsymmetrical tetradentate NNN'O type Schiff base ligand (E)-3-((6-aminopyridin-2-yl)imino)-1-phenyl butane-1-one (LH) and its structure of it characterized by using various spectroscopic techniques such as FT-IR, UV-Vis, elemental analysis, conductivity, magnetic susceptibility measurements and the TGA method. The correlation of all results revealed that the coordination of the (LH) with the metal ion in a molar ratio of 1:1 leads to the formation of an octahedral geometry around the metal ions. Conductivity data showed the electrolytic nature of the complex. Its fluorescence properties were thoroughly investigated by introducing aluminium ions in deionized water, which increased fluorescence intensity at 460 nm. The detection limit for Al was optimized and found to be 1.5 µM. Notably, the fluorescent sensor successfully monitored Al³⁺ in pharmaceutical formulations. This fluorescence-based analytical method is an alternative to other methods due to its high selectivity, sensitivity, and speed. These results suggest the high potential of this system for pharmaceutical monitoring applications.
本研究首次强调了开发用于制药应用的灵敏且选择性的传感器的重要性。一种新型铁(III)配合物,由不对称四齿NNN'O型席夫碱配体(E)-3-((6-氨基吡啶-2-基)亚氨基)-1-苯基丁烷-1-酮(LH)构建而成,其结构通过使用各种光谱技术进行表征,如傅里叶变换红外光谱(FT-IR)、紫外可见光谱(UV-Vis)、元素分析、电导率、磁化率测量以及热重分析法(TGA)。所有结果的相关性表明,(LH)与金属离子以1:1的摩尔比配位会导致在金属离子周围形成八面体几何结构。电导率数据显示了该配合物的电解质性质。通过在去离子水中引入铝离子对其荧光性质进行了深入研究,铝离子使460nm处的荧光强度增加。优化后发现铝的检测限为1.5μM。值得注意的是,该荧光传感器成功监测了药物制剂中的Al³⁺。这种基于荧光的分析方法因其高选择性、灵敏度和速度,是其他方法的一种替代方法。这些结果表明该系统在药物监测应用方面具有很高的潜力。